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Solid State Electrolyte Jobs (NOW HIRING)

... solid phases, using various types of equations of state and activity coefficient models ... Extensive experience in analyzing and modeling electrolyte and thermophysical properties for ...

$150 - $190/hr

Our investments in pioneering technologies such as real‑time electrolyte chemistry insights ... solid phases, using various types of equations of state and activity coefficient models.

$66K - $86K/yr

... solid waste (including hazardous waste) to ensure compliance with U.S. EPA standards and state ... Ensure full compliance for hazardous chemical (e.g., electrolyte, solvents) procurement, storage ...

CRNA - per diem

Weymouth, MA · On-site

$225/hr

Manages patient's fluid, blood, electrolyte and acid base balance. * Provides perianesthetic ... Solid understanding of current anesthesia practices and techniques. * Strong patient assessment ...

CRNA- Full Time

Weymouth, MA · On-site

$268K - $291K/yr

Manages patient's fluid, blood, electrolyte and acid base balance. * Provides perianesthetic ... Solid understanding of current anesthesia practices and techniques. * Strong patient assessment ...

CRNA- Full Time

Weymouth, MA · On-site

$150 - $220/hr

Manages patient's fluid, blood, electrolyte and acid base balance. * Provides perianesthetic ... Solid understanding of current anesthesia practices and techniques. * Strong patient assessment ...

Manages patient's fluid, blood, electrolyte and acid base balance. * Provides perianesthetic ... Solid understanding of current anesthesia practices and techniques. * Strong patient assessment ...

CRNA- Full Time

Weymouth, MA · On-site

$268K - $291K/yr

Manages patient's fluid, blood, electrolyte and acid base balance. * Provides perianesthetic ... Solid understanding of current anesthesia practices and techniques. * Strong patient assessment ...

CRNA - per diem

Weymouth, MA · On-site

$185/hr

Manages patient's fluid, blood, electrolyte and acid base balance. * Provides perianesthetic ... Solid understanding of current anesthesia practices and techniques. * Strong patient assessment ...

Manages patient's fluid, blood, electrolyte and acid base balance. * Provides perianesthetic ... Solid understanding of current anesthesia practices and techniques. * Strong patient assessment ...

Automotive Technician

Asheville, NC · On-site

$25 - $50/hr

Valid state driver's license Other Duties and Responsibilities In addition to the duties listed ... Windshield washer fluid, battery electrolyte * Environment: Frequent exposure to outside weather ...

Showing results 41-60

Solid State Electrolyte information

What is a solid state electrolyte?

A solid state electrolyte is a type of electrolyte material used in batteries and other electrochemical devices, where the ionic conductor is in a solid phase instead of a liquid. These materials allow ions to move between the electrodes, enabling the flow of electricity, while also offering improved safety, stability, and energy density compared to liquid electrolytes. Solid state electrolytes are commonly used in advanced lithium-ion batteries, solid-state batteries, and next-generation energy storage systems.

What are the key skills and qualifications needed to thrive as a solid state electrolyte research scientist, and why are they important?

To succeed as a Solid State Electrolyte Research Scientist, a strong background in materials science, chemistry, or electrochemistry—typically with a PhD or relevant research experience—is essential. Familiarity with laboratory techniques, characterization tools (such as XRD, SEM, and EIS), and data analysis software is crucial for experimental and analytical work. Strong problem-solving, teamwork, and scientific communication skills help researchers collaborate and share findings effectively. These competencies drive innovation in developing safer, higher-performance solid-state batteries and advancing energy storage technology.

What are some common challenges faced when working as a solid state electrolyte researcher in battery development?

Solid state electrolyte researchers often encounter challenges such as ensuring chemical and mechanical stability at the electrode interface, achieving high ionic conductivity at room temperature, and scaling up synthesis methods from laboratory to industrial production. The role frequently involves troubleshooting issues related to material purity and compatibility with various electrode materials. Collaborating closely with materials scientists, chemists, and engineers is essential to address these interdisciplinary challenges and drive innovation in next-generation battery technologies.

What is the difference between Solid State Electrolyte vs Battery Engineer?

AspectSolid State ElectrolyteBattery Engineer
Required CredentialsMaterials science or electrochemistry degree, specialized knowledge in solid electrolytesElectrical or chemical engineering degree, knowledge of battery systems
Work EnvironmentResearch labs, R&D facilities, manufacturing settingsDesign labs, manufacturing plants, testing facilities
Industry UsageBattery technology development, energy storage solutionsBattery design, testing, and optimization

Solid State Electrolyte specialists focus on developing and improving solid electrolyte materials for batteries, while Battery Engineers work on designing, testing, and manufacturing complete battery systems. Both roles require a background in materials science or engineering and often collaborate in the energy storage industry.

More about Solid State Electrolyte jobs

What cities are hiring for Solid State Electrolyte jobs?

Cities with the most Solid State Electrolyte job openings:

What states have the most Solid State Electrolyte jobs?

States with the most job openings for Solid State Electrolyte jobs include:

What job categories do people searching Solid State Electrolyte jobs look for?

The top searched job categories for Solid State Electrolyte jobs are:

Infographic showing various Solid State Electrolyte job openings in the United States as of August 2026, with employment types broken down into 1% As Needed, 70% Full Time, 26% Part Time, and 3% Contract. Highlights an 96% Physical, 1% Hybrid, and 3% Remote job distribution.

Thermodynamic Model Developer

OLI

Parsippany, NJ • On-site

Full-time

Posted 25 days ago


Job description

Thermodynamic Model Developer
Location: Parsippany, NJ 

 
Join Our Innovative Team: At OLI Systems, we’re transforming the future of chemistry modeling. Our mission goes beyond developing software, we’re redefining how chemical process simulations are created and executed. We’re seeking a Specialist in Chemical Engineering Thermodynamics who’s driven to advance and deploy high-fidelity predictive models. As a member of our Research and Database team, you will tackle real-world industrial challenges, model next-generation solutions with precision, and make a lasting impact across a wide range of global industries.
Your Role: Innovator in Model Development
You will work on advancing our state-of-the-art physical property and electrochemical models to achieve unparalleled accuracy in predicting industrially relevant  thermodynamic, transport, and interfacial phenomena across complex chemical and electrochemical systems. This role requires technical proficiency and vision in a rapidly evolving field. We’re looking for someone who is not only well-versed in the science but also excited to drive innovative strategy and contribute to our expansive research portfolio.
About OLI: Leaders in Chemistry Solutions, OLI stands as a beacon in the software development landscape, mastering complex chemical phenomena. Our advanced process modeling solutions have redefined problem-solving in over 35 countries, influencing how over 500 enterprises and academic institutions maximize asset lifecycle. At OLI, our commitment to innovation and sustainability drives every endeavor, making us leaders in industrial digital transformation. Our investments in pioneering technologies such as real-time electrolyte chemistry insights, automated systems, and cloud-based analytics are crafting new benchmarks in the industry.
Why You're Vital to Our Mission: As a key member of our team, you’ll provide leadership in the development of our project portfolio, identifying opportunities for new research and model development. We need your strong ability and interest to work on applications driven by abstract problems and develop creative out-of-the box solutions. Your expertise will be essential in ensuring that our models meet the highest standards of accuracy and applicability, and in guiding collaborations with research partners to address critical societal challenges such as sustainability, asset reliability, and water treatment innovation.
Your key responsibilities will include:
  • Model Development: Advance thermodynamic, transport, and interfacial phenomena models to achieve the highest possible fidelity in predicting thermodynamic and corrosion behaviors  within OLI’s  simulation software platform
  • Project Leadership: Provide technical expertise to guide the development of our project portfolio, identifying opportunities, and ensuring alignment with industry needs.
  • Customization and Parameterization: Tailor and optimize models for industrial systems to enhance their predictive capabilities in key sectors such as oil and gas, metals and mining, power generation, and water treatment.
  • Client Collaboration: Work closely with clients to ensure our modeling solutions meet their unique simulation needs and provide expert guidance on model application and interpretation.
  • Multidisciplinary Collaboration: Collaborate with a team of physical property researchers, process system engineers, and software developers to drive innovation and solve complex problems.
  • Research Partnership: Engage with universities and national laboratories on joint theoretical and experimental studies that tackle important societal issues, particularly in sustainability and asset integrity.
We’re Looking For:
Educational Background:
  • PhD in Chemical Engineering, Physical Chemistry, Materials Science, or a related field.
  • Postdoctoral experience in academia or industry is preferred.
Professional Expertise:
  • Proven research expertise in thermodynamics and physical properties of electrolyte and/or non-electrolyte containing systems or electrochemical corrosion modeling.
  • Proven research expertise in solving phase and chemical equilibrium problems, including vapor-liquid-solid phases, using various types of equations of state and activity coefficient models.
  • Demonstrated strong background in fundamentals-based modeling, particularly in the areas of reaction kinetics, heat and mass transfer in unit operations, and design for advanced reactors or separation processes.
  • Experience in mechanistic model development and the application of simulation in key industrial verticals such as oil and gas, renewables, metals and mining, and water treatment.
Technical Skills:
  • Strong background in mathematical model development, numerical methods, and scientific programming (e.g.: C++, Python, MATLAB, Fortran).
  • Experience with process simulation platforms (e.g.: APSEN, HYSYS, Pro-II, OLI)
  • Experience with AI/ML applications (i.e.: Hybrid, PINNs).
  • Expertise in regression analysis, data interpretation, and model parameterization.
  • Extensive experience in analyzing and modeling electrolyte and thermophysical properties for various scientific applications.
  • Transport and fluid flow modeling experience a plus.
We’re Offering:
  • An opportunity to be a part of a groundbreaking team that is redefining industrial chemistry modeling.
  • A collaborative and dynamic work environment where your contributions are valued and recognized.
  • Competitive compensation package, including incentives base

Equal Opportunity Employer

OLI Systems is an equal-opportunity employer. We celebrate diversity and are committed to creating an inclusive environment for all.

Applicants will be evaluated through a structured, rubric-based interview process to ensure consistency and fairness. OLI supports equitable career progression. Advancement decisions are guided by consistent evaluation criteria and regular performance conversations.

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